Cooling apparatus for light valve
A cooling apparatus for a light valve of the present invention includes a control box disposed on the back of the light valve to actuate the light valve, followed by a heat pipe and a heat-conducting component pasted upon the inner surface of the control box. The heat-conducting component is connected to a heat-collecting end of the heat pipe and one of its surface contacts with the light valve. The heat of the light valve is conducted to the second part of the control box through the heat-conducting component, and then the heat is conducted to the second part of the control box via the heat pipe pasted upon it. Thus, the heat of the light valve can be removed through the large area of the second part of control box, so as to increase the cooling efficiency and simplify the cooling apparatus.
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The present invention relates to a cooling apparatus, and more particularly, to a cooling apparatus for a light valve.
BACKGROUND OF THE INVENTIONIn a projection apparatus, a lighting system projects a light beam on a light valve. After a light modulation process by the light valve, an image is projected on a screen through a projection lens. However, since the light beam is unceasingly projected on the light valve, it accumulates heat on the light valve that affects operation efficiency thereof. Therefore, a suitable cooling apparatus for the light valve is needed.
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One object of the present invention is to provide a cooling apparatus of a light valve, by directly pasting a heat pipe and a heat-conducting component upon a control box and taking the advantage of the large surface of the control box to diffuse the heat, and to achieve the goal of simplifying the cooling apparatus and increasing the cooling efficiency.
In order to achieve the objectives mentioned above, the cooling apparatus for a light valve according to the present invention is to set up a control box on the back of a light valve in order to actuate the light valve, followed by pasting a heat pipe and a heat-conducting component upon the inner surface of the control box. The heat-conducting component is connected to a heat-collecting end of the heat pipe and the surface of the heat-conducting component contacts with the light valve.
The heat of the light valve is conducted to the second part of the control box through the heat-conducting component, and then the heat is conducted to the second part of the control box via the heat pipe pasted upon it. Thus, the heat of the light valve can be removed away through the large area of the second part of control box, so as to increase the cooling efficiency and simplify the cooling apparatus.
BRIEF DESCRIPTION OF THE DRAWINGS
Further features and advantages of the present invention, as well as the structure and operation of the embodiments of the present invention, are described in detail below with reference to the accompanying drawings.
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The control box 11 consists of an electrical circuit board 13, and the electrical circuit board 13 is equipped with a through hole 131 relative to the center of the light valve 1 in order to allow the protruding part 122 of the heat-conducting component 12 to pass through. This causes the protruding part 122 to contact with the light valve 1 and conducts the heat away from the light valve 1. The surface 132 of the electrical circuit board 13 opposite to the light valve 1 contacts with the electrical circuit around the light valve 1 in order to make the electrical connection.
After the actuation of the light valve 1, the heat is produced and conducted to the second part 112 of the control box by the heat-conducting component 12. By the heat pipe 113 pasted upon the second part 112 of the control box, the heat produced by the light valve 1 disperses into the second part 112 of the control box. Cooling by using the large area of the second part 112 of the control box achieves the goal of increasing cooling effect.
The cooling apparatus 10 of the present invention takes advantage of the large surface of the control box 11 to conduct the heat, besides, the heat pipe 113 and the heat-conducting component 12 are pasted upon the inner surface of the control box 11. Thus, the cooling apparatus of the present invention will not affect the spatial configuration of the projection apparatus, and does not need to additionally build a fan or a heat-conducting component to assist the heat dissipation; therefore, it achieves the goal of simplification for the cooling apparatus.
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Although the invention has been described in detail herein with reference to its preferred embodiment, it is to be understood that this description is by way of example only, and is not to be interpreted in a limiting sense. It is to be further understood that numerous changes in the details of the embodiments of the invention, and additional embodiments of the invention, will be apparent, and may be made by, persons of ordinary skill in the art having reference to this description. It is considered that such changes and additional embodiments are within the spirit and true scope of the invention as claimed below.
Claims
1. A cooling apparatus for a light valve, comprising:
- a control box, disposed near the light valve, at least one heat pipe being pasted upon the surface of the control box, the heat pipe having a heat-collecting end, and
- a heat-conducting component, disposed on the control box and connected to the heat-collecting end of the heat pipe, and one surface of the heat-conducting component being contacted with the light valve.
2. The cooling apparatus for a light valve according to claim 1, wherein the heat pipe and the heat-conducting component are pasted upon the same surface of the control box.
3. The cooling apparatus for a light valve according to claim 2, wherein the surface of the control box is the inner surface of the control box.
4. The cooling apparatus for a light valve according to claim 1, wherein the control box is composed of a first part of the control box and a second part of the control box.
5. The cooling apparatus for a light valve according to claim 1, wherein a heat conduction cushion is disposed between the heat-conducting component and the light valve.
6. The cooling apparatus for a light valve according to claim 1, wherein the heat pipe is fixed on the control box by using a fixing member.
7. The cooling apparatus for a light valve according to claim 1, wherein the heat pipe is fixed on the control box by using heat conduction glue.
8. The cooling apparatus for a light valve according to claim 1, wherein an electrical circuit board is disposed in the control box.
9. The cooling apparatus for a light valve according to claim 8, wherein the heat-conducting component passes through the electrical circuit board and contacts with the back of the light valve.
10. The cooling apparatus for a light valve according to claim 8, wherein the heat-conducting component is composed of a first heat-conducting plate and a second heat-conducting plate, and the second heat-conducting plate fixes the electrical circuit board and the light valve.
Type: Application
Filed: Nov 17, 2004
Publication Date: Jun 30, 2005
Applicant: Coretronic Corporation (Chu-Nan)
Inventors: Kuo-Chin Huang (Chu-Nan), Bor-Bin Chou (Chu-Nan), Chun-Yao Chen (Chu-Nan)
Application Number: 10/989,298